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Ethylene in Plant Biology
Samiksha Singh (Edited by), S Singh (Author), Tajammul Husain (Edited by), Vijay Pratap Singh (Edited by), Durgesh Kumar Tripathi (Edited by), Sheo Mohan Prasad (Edited by), Nawal Kishore Dubey (Edited by)
9781119744689, Wiley
Hardback, published 13 October 2022
448 pages
24.4 x 17 x 2.8 cm, 0.992 kg
ETHYLENE IN PLANT BIOLOGY Comprehensive resource detailing the role of ethylene in plant development regulation, gene regulation, root development, stress tolerance, and more Ethylene in Plant Biology presents ethylene research from leading laboratories around the globe to allow readers to gain strong foundational coverage of the topic and aid in further ethylene research as it pertains to plant biology. The work covers general ideas as well as more specific and technical knowledge, detailing the overall role of ethylene in plant biology as a gaseous plant hormone that has emerged as an important signaling molecule which regulates several steps of a plant’s life cycle. The ideas covered in the work range from discovery of ethylene, to its wide roles in plant growth and development, all the way to niche topics such as stress acclimation. Written by highly qualified authors in fields directly related to plant biology and research, the work is divided into 20 chapters, with each chapter covering a specific facet of ethylene or the interaction between ethylene and plant health. Topics discussed in the text include: For biologists, scientists, researchers, and policy makers in the agriculture and pharmaceutical industries, Ethylene in Plant Biology is a key resource to understand the state of the art in the field and establish a foundation of knowledge that can power future research efforts and practical applications.
List of Contributors v Preface ix 1 Ethylene Implication in Root Development 1 2 Crosstalk of Ethylene and Other Phytohormones in the Regulation of Plant Development 17 3 Ethylene and Regulation of Metabolites in Plants 32 4 Ethylene as a Multitasking Regulator of Abscission Processes 49 5 Ethylene: A Powerful Coordinator of Drought Responses 82 6 Current Understanding of Ethylene and Fruit Ripening 109 7 Ethylene and ROS Crosstalk in Plant Developmental Processes 125 8 Role of Ethylene in Flower and Fruit Development 178 9 Ethylene and Nutrient Regulation in Plants 220 10 Plant Metabolism Adjustment in Exogenously Applied Ethylene under Stress 246 11 Role of ET and ROS in Salt Homeostasis and Salinity Stress Tolerance and Transgenic Approaches to Making Salt- Tolerant Crops 259 12 Ethylene and Phytohormone Crosstalk in Plant Defense Against Abiotic Stress 277 13 Mechanism for Ethylene Synthesis and Homeostasis in Plants: Current Updates 291 14 Ethylene and Nitric Oxide Under Salt Stress: Exploring Regulatory Interactions 312 15 Ethylene and Metabolic Reprogramming under Abiotic Stresses 345 16 Regulation of Thermotolerance Stress in Crops by Plant Growth- Promoting Rhizobacteria Through Ethylene Homeostasis 363 17 Ethylene: Signaling, Transgenics, and Applications in Crop Improvement 374 18 Role of Ethylene in Combating Biotic Stress 388 19 Ethylene and Nitric Oxide Crosstalk in Plants under Abiotic Stress 398 20 Polyamine Metabolism and Ethylene Signaling in Plants 420 Index 437
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Subject Areas: Science: general issues [PD]
